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Photodiodes: Thermal Generation and Current Mechanisms
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Carrier Statistics: Understanding Fermi Level Dynamics
Explores carrier statistics and the Fermi level's role in semiconductors.
Diodes and Transistors: Principles and Characteristics
Provides an overview of diodes and transistors, focusing on their principles, characteristics, and operational mechanisms in electronic circuits.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
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Covers the analysis of measurements and defects engineering in semiconductor devices, including density of states and defect probing.
Basic Semiconductor Properties
Explores semiconductor fundamentals, including band structure, carrier concentration, and Fermi levels.
Diode Equations
Covers diode equations in semiconductor devices, including dark IV curve and photocurrent.
Understanding Semiconductor Equilibrium: Concepts and Applications
Discusses semiconductor physics, focusing on equilibrium states and energy band structures in homogeneous and inhomogeneous semiconductors.
Charge Formation and Delocalization: Solitons, Polarons, and Interfaces
Explores charge carriers in organic semiconductors, including solitons, polarons, and band transport regimes.
PN Junctions and Heterostructures: Principles and Applications
Discusses the principles of pn junctions and heterostructures in semiconductor physics, focusing on their electrical characteristics and practical applications.
Semiconductor Detectors: Principles and Applications
Explores semiconductor detectors for radiation detection, covering principles, applications, doping, p-n junctions, and detection mechanisms.